A technique for determining a relationship between the prices of heat and electricity generated by CHP

A technique was developed to optimize operations of a combined heat and power (CHP) plant taking into account changes in thermal loads. The technique is based on determining the relationship between changes in the price of electricity and changes in the price of heat. The price range is determined,...

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Main Authors: Stepanova Elena, Zharkov Pavel
Format: Article
Language:English
Published: EDP Sciences 2020-01-01
Series:E3S Web of Conferences
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2020/69/e3sconf_energy-212020_03025.pdf
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spelling doaj-53122880d65144bd89244525c2ce1c602021-04-02T16:16:23ZengEDP SciencesE3S Web of Conferences2267-12422020-01-012090302510.1051/e3sconf/202020903025e3sconf_energy-212020_03025A technique for determining a relationship between the prices of heat and electricity generated by CHPStepanova Elena0Zharkov Pavel1Department of Thermal Power Systems Melentiev Energy Systems Institute of Siberian Branch of the Russian Academy of Sciences, ESI SB RASDepartment of Thermal Power Systems Melentiev Energy Systems Institute of Siberian Branch of the Russian Academy of Sciences, ESI SB RASA technique was developed to optimize operations of a combined heat and power (CHP) plant taking into account changes in thermal loads. The technique is based on determining the relationship between changes in the price of electricity and changes in the price of heat. The price range is determined, on the basis of which the Pareto-optimal set of decisions is built. This set of solutions helps to find options for technical solutions that ensure the competitiveness of CHP plant relative to single-product heat and power generating plants and the most effective option to choose. It is required to solve three optimization problems to construct a Pareto-optimal set of solutions: the problem of minimizing the price of electricity for a given heat price and the rate of return on investment, the problem of minimizing the energy price to determine the maximum heat price, and the problem of minimizing the exergy price to find the minimum boundary of the heat price range. The technique was tested on the example of a cogeneration gas turbine plant. The cogeneration gas turbine plant has a waste-heat boiler and a contact heat exchanger for heating the make-up network water. The heat price range for the investigated a cogeneration gas turbine plant has been determined. Optimization studies of the operating modes of a cogeneration gas turbine plant were carried out in this range with a certain step. The results obtained can be used to select the optimal technical solutions, select the optimal combination of circuit-parametric solutions that ensure the competitiveness of the products of a cogeneration gas turbine plant.https://www.e3s-conferences.org/articles/e3sconf/pdf/2020/69/e3sconf_energy-212020_03025.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Stepanova Elena
Zharkov Pavel
spellingShingle Stepanova Elena
Zharkov Pavel
A technique for determining a relationship between the prices of heat and electricity generated by CHP
E3S Web of Conferences
author_facet Stepanova Elena
Zharkov Pavel
author_sort Stepanova Elena
title A technique for determining a relationship between the prices of heat and electricity generated by CHP
title_short A technique for determining a relationship between the prices of heat and electricity generated by CHP
title_full A technique for determining a relationship between the prices of heat and electricity generated by CHP
title_fullStr A technique for determining a relationship between the prices of heat and electricity generated by CHP
title_full_unstemmed A technique for determining a relationship between the prices of heat and electricity generated by CHP
title_sort technique for determining a relationship between the prices of heat and electricity generated by chp
publisher EDP Sciences
series E3S Web of Conferences
issn 2267-1242
publishDate 2020-01-01
description A technique was developed to optimize operations of a combined heat and power (CHP) plant taking into account changes in thermal loads. The technique is based on determining the relationship between changes in the price of electricity and changes in the price of heat. The price range is determined, on the basis of which the Pareto-optimal set of decisions is built. This set of solutions helps to find options for technical solutions that ensure the competitiveness of CHP plant relative to single-product heat and power generating plants and the most effective option to choose. It is required to solve three optimization problems to construct a Pareto-optimal set of solutions: the problem of minimizing the price of electricity for a given heat price and the rate of return on investment, the problem of minimizing the energy price to determine the maximum heat price, and the problem of minimizing the exergy price to find the minimum boundary of the heat price range. The technique was tested on the example of a cogeneration gas turbine plant. The cogeneration gas turbine plant has a waste-heat boiler and a contact heat exchanger for heating the make-up network water. The heat price range for the investigated a cogeneration gas turbine plant has been determined. Optimization studies of the operating modes of a cogeneration gas turbine plant were carried out in this range with a certain step. The results obtained can be used to select the optimal technical solutions, select the optimal combination of circuit-parametric solutions that ensure the competitiveness of the products of a cogeneration gas turbine plant.
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2020/69/e3sconf_energy-212020_03025.pdf
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